1)microspheres微球体
1.CdS microspheres were prepared by hydrothermal method.本文以水热法制得了CdS微球体,采用XRD、SEM、TEM等测试手段对产物进行了表征。
2.Objective To study the release characteristics of fluorouracil-loaded carboxymethyl chitosan microspheres(Fu-CMCS-MS) in vitro.目的探讨对以羧甲基壳聚糖为载体的氟尿嘧啶微球体外释药特性的影响因素。
3.Objective To prepare carboxymethyl chitosan microspheres of fluorouracil(FU-CMCS-MS), and measure the releasing of FU-CMCS-MS in vitro.目的 探讨羧甲基壳聚糖包药微球体的制备及体外释药特性。
英文短句/例句
1.Cultivation and Characterization of Tumor Spheres Generated from Human Colorectal Cancer Cell Lines人结直肠癌干细胞微球体培养及鉴定
2.Research on Preparation of Ordered Porous SiO_2 Microspheres with Colloidal Crystals Template胶体晶体模板法制备有序多孔SiO_2微球
3.The laccase was immobilized on the magnetic chitosan microspheres.以磁性壳聚糖微球为载体固定漆酶。
4.Study on Rare-Earth Doping and Self-organizing of Silica Colloidal Microspheres;SiO_2胶体微球的稀土掺杂与自组装研究
5.Study on Preparation and Property of Ba-Ferrite Hollow Microspheres;空心钡铁氧体微球的制备与性能研究
6.Research Progress on PLGA Nanoparticles/Microspheres as DNA CarriersPLGA纳米/微球作为核酸载体的研究进展
7.Research on the Preparation of Spherical Alumina Powder by Microemulsion微乳液法制备球形氧化铝粉体的研究
8.Application of Candida Albicans Immunological Magnetic Microspheres Carriers白色念珠菌免疫磁性微球载体的应用
9.Drug release of doxorubicin-loaded magnetic microsphere in vitro and in vivo阿霉素磁性毫微球的体内外释放研究
10.Preparation and in vitro release of mesna polylactic acid microspheres美司钠聚乳酸微球的制备及体外释放
11.Preparation and in vitro release pattern of iodine cross-linked dextrin microspheres交联糊精-碘微球的制备及体外释放
12.Preparation of rh-BMP-2 loaded chitosan microsphere and its properties in vitrorh-BMP-2壳聚糖微球的制备及体外检测
13.Spheroidizing Process for Cementite of Steel T12 and Its Microscopic StructureT12钢渗碳体球化处理及其显微组织
14.Properties evaluation of linked polymer microspberes dispersed system交联聚合物微球分散体系的性能评价
15.Assembly of mesoporous NiO microspheres based on sheet-like precursors基于片状前驱体组装中孔NiO微球
16.The Influence of Micro-nano Particles on Rheology and Machanical Properties of PP Composite微纳米有机微球对聚丙烯复合体系流变及力学性能的影响
17.Combustion of a Polymer (PMMA) Sphere in Microgravity; Final Report微重力条件下聚合物(PMMA)球体的燃烧/最终报告
18.Moon's weak gravity let the gasses slip away into space.月球的微弱引力允许气体逃到太空里去。
相关短句/例句
microsphere['maikr?sfi?]微球体
1.In this paper,the light scattering characteristics of microsphere are studied by adopting Mie scattering theory and the Eikonal approximation method is used to approximate the spheroid with its effective spheres so that we could use Mie scattering theory to calculate and analysis it.采用M ie散射理论研究了微球体光散射的性质并用E ikonal近似方法把微椭球体用与其等效的微球体来近似,进而应用M ie散射理论对微椭球体光散射进行数值模拟,并对计算结果进行了分析。
3)microspheroid微椭球体
4)microspheres delivery微球载体
5)silica microsphere硅微球体
6)microkineto sphere微动球体
延伸阅读
空心超导球体(hollowsuperconductingsphere)空心超导球体(hollowsuperconductingsphere)设内外半径分别为r1和r2(r1≤r≤r2),壁厚d=r2-r1的第一类超导体的空心球体处于外磁场强度H0中。令ζ=r/δ,Δ=d/δ,δ=δ0/ψ,δ0为大样品弱磁场穿透深度,ψ是有序参量。设H1和M分别是空腔中磁场强度和样品磁矩。按GL理论,徐龙道和Zharkov给出的部分主要结果如下:`\zeta_1\gt\gt1`和$\Delta\gt\gt1$时,H1=6H0ζ2ζ1-2e-Δ,M=-H0r23(1-3δ/r2)/2所以对厚壁样品,腔内H1≈0,只要H0低于临界磁场,球壳层可视为磁屏蔽物,样品可利用为磁屏蔽体。对$\zeta_1\gt\gt1$和$\Delta\lt\lt1$的情形,则H1=H0/(1 ζ1Δ/3),M=-H0r23[1-1/(1 ζ1Δ/3)]/2可见,若$\zeta_1\Delta\gt\gt1$,则$H_1\lt\ltH_0$或H1≈0。所以,虽然$d\lt\lt\delta$,但磁场仍被屏蔽而很难透入空腔,称ζ1Δ/3为空心超导球体的屏蔽因子。相反,$\zeta_1\Delta\lt\lt1$,则H1≈H0,球壳层几乎不起屏蔽磁场的作用。对M讲,也可作同样讨论。此外,类似于实心小样品,也可求出各种临界磁场HK1,HK,HK2和临界尺寸等。
